Euclid preparation: XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography

Cuby, J; Morin, B; Pedersen, K; Crespa, P. Tallada; Teplitz, H. I.; Valentijn, E. A.; Euclid Collaboration

Abstract

The analysis of weak gravitational lensing in wide-field imaging surveys is considered to be a major cosmological probe of dark energy. Our capacity to constrain the dark energy equation of state relies on an accurate knowledge of the galaxy mean redshift z. We investigate the possibility of measuring z with an accuracy better than 0.002 (1+z) in ten tomographic bins spanning the redshift interval 0.2 99.8%. The zPDF approach can also be successful if the zPDF is de-biased using a spectroscopic training sample. This approach requires deep imaging data but is weakly sensitive to spectroscopic redshift failures in the training sample. We improve the de-biasing method and confirm our finding by applying it to real-world weak-lensing datasets (COSMOS and KiDS+VIKING-450).

Más información

Título según WOS: Euclid preparation: XI. Mean redshift determination from galaxy redshift probabilities for cosmic shear tomography
Título de la Revista: ASTRONOMY & ASTROPHYSICS
Volumen: 647
Editorial: EDP SCIENCES S A
Fecha de publicación: 2021
DOI:

10.1051/0004-6361/202040237

Notas: ISI